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首页> 外文期刊>ACS Omega >Additive Combination of Spectra Reflected from Porous Silicon and Carbon/Porous Silicon Rugate Filters to Improve Vapor Selectivity
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Additive Combination of Spectra Reflected from Porous Silicon and Carbon/Porous Silicon Rugate Filters to Improve Vapor Selectivity

机译:从多孔硅和碳/多孔硅粗晶滤波器反射的光谱组合以提高蒸汽选择性

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Selectivity remains a challenge for rapid optical vapor sensing via light reflected from porous silicon photonic crystals. This work highlights a method to increase optical vapor selectivity of porous silicon rugate filters by analyzing additive spectra from two rugate filter substrates with different functionalities, an oxidized and carbonized surface. Individually, both porous silicon rugate filters demonstrated sensitivity but not selectivity toward the vapor analytes. However, differences in peak shift trends between the two substrates suggested differences in vapor affinities for the surfaces. By adding the two spectra, improvements to selectivity relative to the individual surfaces were observed even at low vapor pressures and for analytes of similar polarity, refractive index, and concentration. These results are expected to contribute toward optical vapor selectivity improvements in one-dimensional porous silicon photonic crystals.
机译:选择性仍然是通过从多孔硅光子光子晶体反射的光的快速光学蒸汽感测的挑战。该工作强调了通过分析来自具有不同官能团的两个顽固过滤器基材,氧化和碳化表面的添加剂光谱来增加多孔硅鲁酸酯过滤器的光学蒸汽选择性的方法。单独地,多孔硅粗糙滤波器均显示敏感性,但对蒸汽分析物没有选择性。然而,两个基板之间的峰值移位趋势的差异表明表面对表面的蒸气亲和性的差异。通过添加两个光谱,即使在低蒸汽压力下也观察到相对于各个表面的选择性的改进,并且用于类似极性,折射率和浓度的分析物。这些结果预计将有助于一维多孔硅光子晶体的光学蒸汽选择性改进。

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